Molecular Transport Junctions Created By Self-Contacting Gapped Nanowires

Jong Kuk Lim, One-Sun Lee, Jae Won Jang, Sarah Hurst Petrosko, George C. Schatz, Chad A. Mirkin

Research output: Contribution to journalArticle

1 Citation (Scopus)
Original languageEnglish
Pages (from-to)4349-4356
Number of pages8
JournalSmall
DOIs
Publication statusPublished - 24 Aug 2016

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Electrochemical electrodes
Magnetic devices
Molecular electronics
Van der Waals forces
Aluminum Oxide
Anodic oxidation
Silver
Nanowires
Electrodes
Nitric Acid
Sodium Hydroxide
Electrochemical cells
Water
Electrodeposition
Glass
Molecules

Keywords

  • DLVO theory
  • molecular electronics
  • molecular transport junctions
  • on-wire lithography, nanowires

ASJC Scopus subject areas

  • Biomaterials
  • Engineering (miscellaneous)
  • Biotechnology

Cite this

Lim, J. K., Lee, O-S., Jang, J. W., Petrosko, S. H., Schatz, G. C., & Mirkin, C. A. (2016). Molecular Transport Junctions Created By Self-Contacting Gapped Nanowires. Small, 4349-4356. https://doi.org/10.1002/smll.201601214

Molecular Transport Junctions Created By Self-Contacting Gapped Nanowires. / Lim, Jong Kuk; Lee, One-Sun; Jang, Jae Won; Petrosko, Sarah Hurst; Schatz, George C.; Mirkin, Chad A.

In: Small, 24.08.2016, p. 4349-4356.

Research output: Contribution to journalArticle

Lim, JK, Lee, O-S, Jang, JW, Petrosko, SH, Schatz, GC & Mirkin, CA 2016, 'Molecular Transport Junctions Created By Self-Contacting Gapped Nanowires', Small, pp. 4349-4356. https://doi.org/10.1002/smll.201601214
Lim, Jong Kuk ; Lee, One-Sun ; Jang, Jae Won ; Petrosko, Sarah Hurst ; Schatz, George C. ; Mirkin, Chad A. / Molecular Transport Junctions Created By Self-Contacting Gapped Nanowires. In: Small. 2016 ; pp. 4349-4356.
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